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607 lines
12 KiB
607 lines
12 KiB
/*
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gwclientstream.cpp - Kopete Groupwise Protocol
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Copyright (c) 2004 SUSE Linux AG http://www.suse.com
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Based on Iris, Copyright (C) 2003 Justin Karneges
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encode_method from Gaim src/protocols/novell/nmconn.c
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Copyright (c) 2004 Novell, Inc. All Rights Reserved
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Kopete (c) 2002-2004 by the Kopete developers <kopete-devel@kde.org>
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*************************************************************************
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* *
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* This library is free software; you can redistribute it and/or *
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* modify it under the terms of the GNU Lesser General Public *
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* License as published by the Free Software Foundation; either *
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* version 2 of the License, or (at your option) any later version. *
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* *
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*************************************************************************
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*/
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//#include<textstream.h>
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//#include<tqguardedptr.h>
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// #include<qca.h>
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// #include<stdlib.h>
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// #include"bytestream.h"
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// #include"base64.h"
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// #include"hash.h"
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// #include"simplesasl.h"
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// #include"securestream.h"
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// #include"protocol.h"
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#include <tqapplication.h> // for qdebug
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#include <tqguardedptr.h>
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#include <tqobject.h>
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#include <tqptrqueue.h>
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#include <tqtimer.h>
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#include "bytestream.h"
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#include "connector.h"
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#include "coreprotocol.h"
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#include "request.h"
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#include "securestream.h"
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#include "tlshandler.h"
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//#include "iostream.h"
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#include "gwclientstream.h"
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//#define LIBGW_DEBUG 1
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void cs_dump( const TQByteArray &bytes );
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enum {
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Idle,
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Connecting,
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WaitVersion,
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WaitTLS,
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NeedParams,
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Active,
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Closing
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};
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enum {
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Client,
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Server
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};
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class ClientStream::Private
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{
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public:
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Private()
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{
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conn = 0;
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bs = 0;
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ss = 0;
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tlsHandler = 0;
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tls = 0;
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// sasl = 0;
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in.setAutoDelete(true);
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allowPlain = false;
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mutualAuth = false;
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haveLocalAddr = false;
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/* minimumSSF = 0;
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maximumSSF = 0;*/
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doBinding = true;
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in_rrsig = false;
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reset();
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}
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void reset()
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{
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state = Idle;
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notify = 0;
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newTransfers = false;
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// sasl_ssf = 0;
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tls_warned = false;
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using_tls = false;
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}
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NovellDN id;
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TQString server;
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bool oldOnly;
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bool allowPlain, mutualAuth;
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bool haveLocalAddr;
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TQHostAddress localAddr;
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TQ_UINT16 localPort;
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// int minimumSSF, maximumSSF;
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// TQString sasl_mech;
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bool doBinding;
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bool in_rrsig;
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Connector *conn;
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ByteStream *bs;
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TLSHandler *tlsHandler;
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QCA::TLS *tls;
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// QCA::SASL *sasl;
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SecureStream *ss;
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CoreProtocol client;
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//CoreProtocol srv;
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TQString defRealm;
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int mode;
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int state;
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int notify;
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bool newTransfers;
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// int sasl_ssf;
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bool tls_warned, using_tls;
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bool doAuth;
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// TQStringList sasl_mechlist;
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int errCond;
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TQString errText;
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TQPtrQueue<Transfer> in;
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TQTimer noopTimer; // probably not needed
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int noop_time;
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};
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ClientStream::ClientStream(Connector *conn, TLSHandler *tlsHandler, TQObject *parent)
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:Stream(parent)
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{
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d = new Private;
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d->mode = Client;
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d->conn = conn;
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connect( d->conn, TQT_SIGNAL(connected()), TQT_SLOT(cr_connected()) );
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connect( d->conn, TQT_SIGNAL(error()), TQT_SLOT(cr_error()) );
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connect( &d->client, TQT_SIGNAL( outgoingData( const TQByteArray& ) ), TQT_SLOT ( cp_outgoingData( const TQByteArray & ) ) );
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connect( &d->client, TQT_SIGNAL( incomingData() ), TQT_SLOT ( cp_incomingData() ) );
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d->noop_time = 0;
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connect(&d->noopTimer, TQT_SIGNAL(timeout()), TQT_SLOT(doNoop()));
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d->tlsHandler = tlsHandler; // all the extra stuff happening in the larger ctor happens at connect time :)
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}
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ClientStream::~ClientStream()
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{
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reset();
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delete d;
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}
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void ClientStream::reset(bool all)
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{
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d->reset();
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d->noopTimer.stop();
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// delete securestream
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delete d->ss;
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d->ss = 0;
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// reset sasl
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// delete d->sasl;
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// d->sasl = 0;
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// client
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if(d->mode == Client) {
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// reset tls
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if(d->tlsHandler)
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d->tlsHandler->reset();
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// reset connector
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if(d->bs) {
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d->bs->close();
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d->bs = 0;
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}
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d->conn->done();
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// reset state machine
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d->client.reset();
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}
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if(all)
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d->in.clear();
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}
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// Jid ClientStream::jid() const
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// {
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// return d->jid;
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// }
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void ClientStream::connectToServer(const NovellDN &id, bool auth)
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{
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reset(true);
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d->state = Connecting;
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d->id = id;
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d->doAuth = auth;
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d->server = d->id.server;
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d->conn->connectToServer( d->server );
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}
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void ClientStream::continueAfterWarning()
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{
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if(d->state == WaitVersion) {
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// if we don't have TLS yet, then we're never going to get it
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if(!d->tls_warned && !d->using_tls) {
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d->tls_warned = true;
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d->state = WaitTLS;
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emit warning(WarnNoTLS);
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return;
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}
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d->state = Connecting;
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processNext();
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}
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else if(d->state == WaitTLS) {
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d->state = Connecting;
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processNext();
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}
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}
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void ClientStream::accept()
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{
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/* d->srv.host = d->server;
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processNext();*/
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}
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bool ClientStream::isActive() const
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{
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return (d->state != Idle);
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}
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bool ClientStream::isAuthenticated() const
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{
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return (d->state == Active);
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}
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// void ClientStream::setPassword(const TQString &s)
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// {
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// if(d->client.old) {
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// d->client.setPassword(s);
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// }
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// else {
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// if(d->sasl)
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// d->sasl->setPassword(s);
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// }
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// }
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// void ClientStream::setRealm(const TQString &s)
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// {
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// if(d->sasl)
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// d->sasl->setRealm(s);
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// }
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void ClientStream::continueAfterParams()
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{
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/* if(d->state == NeedParams) {
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d->state = Connecting;
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if(d->client.old) {
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processNext();
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}
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else {
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if(d->sasl)
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d->sasl->continueAfterParams();
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}
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}*/
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}
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void ClientStream::setNoopTime(int mills)
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{
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d->noop_time = mills;
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if(d->state != Active)
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return;
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if(d->noop_time == 0) {
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d->noopTimer.stop();
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return;
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}
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d->noopTimer.start(d->noop_time);
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}
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void ClientStream::setLocalAddr(const TQHostAddress &addr, TQ_UINT16 port)
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{
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d->haveLocalAddr = true;
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d->localAddr = addr;
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d->localPort = port;
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}
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int ClientStream::errorCondition() const
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{
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return d->errCond;
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}
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TQString ClientStream::errorText() const
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{
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return d->errText;
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}
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// TQDomElement ClientStream::errorAppSpec() const
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// {
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// return d->errAppSpec;cr_error
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// }
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// bool ClientStream::old() const
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// {
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// return d->client.old;
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// }
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void ClientStream::close()
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{
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if(d->state == Active) {
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d->state = Closing;
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// d->client.shutdown();
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processNext();
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}
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else if(d->state != Idle && d->state != Closing) {
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reset();
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}
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}
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void ClientStream::setAllowPlain(bool b)
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{
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d->allowPlain = b;
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}
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void ClientStream::setRequireMutualAuth(bool b)
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{
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d->mutualAuth = b;
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}
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// void ClientStream::setSSFRange(int low, int high)
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// {
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// d->minimumSSF = low;
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// d->maximumSSF = high;
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// }
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// void ClientStream::setOldOnly(bool b)
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// {
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// d->oldOnly = b;
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// }
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bool ClientStream::transfersAvailable() const
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{
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return ( !d->in.isEmpty() );
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}
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Transfer * ClientStream::read()
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{
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if(d->in.isEmpty())
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return 0; //first from queue...
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else
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return d->in.dequeue();
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}
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void ClientStream::write( Request *request )
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{
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// pass to CoreProtocol for transformation into wire format
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d->client.outgoingTransfer( request );
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}
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void cs_dump( const TQByteArray &bytes )
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{
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//#define GW_CLIENTSTREAM_DEBUG 1
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#ifdef GW_CLIENTSTREAM_DEBUG
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CoreProtocol::debug( TQString( "contains: %1 bytes " ).arg( bytes.count() ) );
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uint count = 0;
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while ( count < bytes.count() )
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{
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int dword = 0;
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for ( int i = 0; i < 8; ++i )
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{
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if ( count + i < bytes.count() )
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printf( "%02x ", bytes[ count + i ] );
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else
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printf( " " );
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if ( i == 3 )
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printf( " " );
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}
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printf(" | ");
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dword = 0;
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for ( int i = 0; i < 8; ++i )
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{
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if ( count + i < bytes.count() )
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{
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int j = bytes [ count + i ];
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if ( j >= 0x20 && j <= 0x7e )
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printf( "%2c ", j );
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else
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printf( "%2c ", '.' );
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}
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else
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printf( " " );
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if ( i == 3 )
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printf( " " );
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}
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printf( "\n" );
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count += 8;
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}
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printf( "\n" );
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#else
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Q_UNUSED( bytes );
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#endif
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}
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void ClientStream::cp_outgoingData( const TQByteArray& outgoingBytes )
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{
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// take formatted bytes from CoreProtocol and put them on the wire
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#ifdef LIBGW_DEBUG
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CoreProtocol::debug( "ClientStream::cp_outgoingData:" );
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cs_dump( outgoingBytes );
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#endif
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d->ss->write( outgoingBytes );
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}
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void ClientStream::cp_incomingData()
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{
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CoreProtocol::debug( "ClientStream::cp_incomingData:" );
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Transfer * incoming = d->client.incomingTransfer();
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if ( incoming )
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{
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CoreProtocol::debug( " - got a new transfer" );
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d->in.enqueue( incoming );
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d->newTransfers = true;
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emit doReadyRead();
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}
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else
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CoreProtocol::debug( TQString( " - client signalled incomingData but none was available, state is: %1" ).arg( d->client.state() ) );
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}
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void ClientStream::cr_connected()
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{
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d->bs = d->conn->stream();
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connect(d->bs, TQT_SIGNAL(connectionClosed()), TQT_SLOT(bs_connectionClosed()));
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connect(d->bs, TQT_SIGNAL(delayedCloseFinished()), TQT_SLOT(bs_delayedCloseFinished()));
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TQByteArray spare = d->bs->read();
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d->ss = new SecureStream(d->bs);
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connect(d->ss, TQT_SIGNAL(readyRead()), TQT_SLOT(ss_readyRead()));
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connect(d->ss, TQT_SIGNAL(bytesWritten(int)), TQT_SLOT(ss_bytesWritten(int)));
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connect(d->ss, TQT_SIGNAL(tlsHandshaken()), TQT_SLOT(ss_tlsHandshaken()));
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connect(d->ss, TQT_SIGNAL(tlsClosed()), TQT_SLOT(ss_tlsClosed()));
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connect(d->ss, TQT_SIGNAL(error(int)), TQT_SLOT(ss_error(int)));
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//d->client.startDialbackOut("andbit.net", "im.pyxa.org");
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//d->client.startServerOut(d->server);
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// d->client.startClientOut(d->jid, d->oldOnly, d->conn->useSSL(), d->doAuth);
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// d->client.setAllowTLS(d->tlsHandler ? true: false);
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// d->client.setAllowBind(d->doBinding);
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// d->client.setAllowPlain(d->allowPlain);
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/*d->client.jid = d->jid;
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d->client.server = d->server;
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d->client.allowPlain = d->allowPlain;
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d->client.oldOnly = d->oldOnly;
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d->client.sasl_mech = d->sasl_mech;
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d->client.doTLS = d->tlsHandler ? true: false;
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d->client.doBinding = d->doBinding;*/
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TQGuardedPtr<TQObject> self = this;
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emit connected();
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if(!self)
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return;
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// immediate SSL?
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if(d->conn->useSSL()) {
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CoreProtocol::debug( "CLIENTSTREAM: cr_connected(), starting TLS" );
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d->using_tls = true;
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d->ss->startTLSClient(d->tlsHandler, d->server, spare);
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}
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else {
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/* d->client.addIncomingData(spare);
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processNext();*/
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}
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}
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void ClientStream::cr_error()
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{
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reset();
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emit error(ErrConnection);
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}
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void ClientStream::bs_connectionClosed()
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{
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reset();
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emit connectionClosed();
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}
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void ClientStream::bs_delayedCloseFinished()
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{
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// we don't care about this (we track all important data ourself)
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}
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void ClientStream::bs_error(int)
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{
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// TODO
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}
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void ClientStream::ss_readyRead()
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{
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TQByteArray a;
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a = d->ss->read();
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#ifdef LIBGW_DEBUG
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TQCString cs(a.data(), a.size()+1);
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CoreProtocol::debug( TQString( "ClientStream: ss_readyRead() recv: %1 bytes" ).arg( a.size() ) );
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cs_dump( a );
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#endif
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d->client.addIncomingData(a);
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/* if(d->notify & CoreProtocol::NRecv) { */
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//processNext();
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}
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void ClientStream::ss_bytesWritten(int bytes)
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{
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#ifdef LIBGW_DEBUG
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CoreProtocol::debug( TQString( "ClientStream::ss_bytesWritten: %1 bytes written" ).arg( bytes ) );
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#else
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Q_UNUSED( bytes );
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#endif
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}
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void ClientStream::ss_tlsHandshaken()
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{
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TQGuardedPtr<TQObject> self = this;
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emit securityLayerActivated(LayerTLS);
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if(!self)
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return;
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processNext();
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}
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void ClientStream::ss_tlsClosed()
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{
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CoreProtocol::debug( "ClientStream::ss_tlsClosed()" );
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reset();
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emit connectionClosed();
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}
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void ClientStream::ss_error(int x)
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{
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CoreProtocol::debug( TQString( "ClientStream::ss_error() x=%1 ").arg( x ) );
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if(x == SecureStream::ErrTLS) {
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reset();
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d->errCond = TLSFail;
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emit error(ErrTLS);
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}
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else {
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reset();
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emit error(ErrSecurityLayer);
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}
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}
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void ClientStream::srvProcessNext()
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{
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}
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void ClientStream::doReadyRead()
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{
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//TQGuardedPtr<TQObject> self = this;
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emit readyRead();
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//if(!self)
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// return;
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//d->in_rrsig = false;
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}
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void ClientStream::processNext()
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{
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if( !d->in.isEmpty() ) {
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//d->in_rrsig = true;
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TQTimer::singleShot(0, this, TQT_SLOT(doReadyRead()));
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}
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|
}
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|
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bool ClientStream::handleNeed()
|
|
{
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|
return false;
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|
}
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|
|
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void ClientStream::doNoop()
|
|
{
|
|
}
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|
|
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void ClientStream::handleError()
|
|
{
|
|
}
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|
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#include "gwclientstream.moc"
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